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Experimental and Theoretical Analysis of the Goswami Cycle Operating at Low Temperature Heat Sources

机译:Goswami循环在低温热源下运行的实验和理论分析

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The Goswami cycle is a cycle that combines an ammonia-water vapor absorption cycle and a Rankine cycle for cooling and mechanical power purposes by using thermal heat sources such as solar energy or geothermal steam. In this paper, a theoretical investigation was conducted to determine the performance outputs of the cycle, namely, net mechanical power, cooling, effective first law efficiency and exergy efficiency, for a boiler and an absorber temperature of 85 degrees C and 35 degrees C, respectively, and different boiler pressures and ammonia-water concentrations. In addition, an experimental investigation was carried out to verify the predicted trends of theoretical analysis and evaluate the performance of a modified scroll expander. The theoretical analysis showed that maximum effective first law and exergy efficiencies were 7.2% and 45%, respectively. The experimental tests showed that the scroll expander reached a 30-40% of efficiency when boiler temperature was 85 degrees C and rectifier temperature was 55 degrees C. Finally, it was obtained that superheated inlet conditions improved the efficiency of the modified expander.
机译:Goswami循环是一个结合氨水蒸气吸收循环和Rankine循环的循环,通过使用热能(例如太阳能或地热蒸汽)进行冷却和机械发电。本文进行了理论研究,以确定锅炉和吸收器温度为85摄氏度和35摄氏度,该循环的性能输出,即净机械功率,冷却,有效第一定律效率和火用效率,以及不同的锅炉压力和氨水浓度。此外,进行了一项实验研究,以验证理论分析的预测趋势并评估改进型涡旋膨胀机的性能。理论分析表明,最大有效第一定律和火用效率分别为7.2%和45%。实验测试表明,当锅炉温度为85摄氏度,精馏温度为55摄氏度时,涡旋膨胀机达到30-40%的效率。最后,发现过热的进气条件提高了改性膨胀机的效率。

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